CERN Accelerating science

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1.
Microscopic examination of rf-cavity-quality niobium films through local nonlinear microwave response / Wang, Chung-Yang (Maryland U.) ; Pereira, Carlota (CERN) ; Leith, Stewart (CERN) ; Rosaz, Guillaume (CERN) ; Anlage, Steven M. (Maryland U.)
The performance of superconducting radio-frequency (SRF) cavities is sometimes limited by local defects. To investigate the RF properties of these local defects, especially those that nucleate RF magnetic vortices, a near-field magnetic microwave microscope is employed. [...]
arXiv:2305.07746.- 2024-11-01 - 22 p. - Published in : Phys. Rev. Applied 22 (2024) 054010 Fulltext: 2305.07746 - PDF; Publication - PDF;
2.
Next-Generation Superconducting RF Technology based on Advanced Thin Film Technologies and Innovative Materials for Accelerator Enhanced Performance and Energy Reach / Valente-Feliciano, A.-.M. (Jefferson Lab) ; Antoine, C. (Jefferson Lab ; IRFU, Saclay, DACM) ; Anlage, S. (Maryland U.) ; Ciovati, G. (Jefferson Lab) ; Delayen, J. (Jefferson Lab ; Old Dominion U.) ; Gerigk, F. (CERN) ; Gurevich, A. (Old Dominion U.) ; Junginger, T. (TRIUMF ; Victoria U.) ; Keckert, S. (Helmholtz-Zentrum, Berlin) ; Keppe, G. (INFN, Legnaro) et al.
Superconducting RF is a key technology for future particle accelerators, now relying on advanced surfaces beyond bulk Nb for a leap in performance and efficiency. [...]
arXiv:2204.02536.
- 29.
eConf - Fulltext
3.
High Frequency Nonlinear Response of Superconducting Cavity-Grade Nb surfaces / Oripov, Bakhrom (Maryland U.) ; Bieler, Thomas (Michigan State U.) ; Ciovati, Gianluigi (Jefferson Lab) ; Calatroni, Sergio (CERN) ; Dhakal, Pashupati (Jefferson Lab) ; Junginger, Tobias (Lancaster U. (main)) ; Malyshev, Oleg B. (Daresbury) ; Terenziani, Giovanni (CERN) ; Valente-Feliciano, Anne-Marie (Jefferson Lab) ; Valizadeh, Reza (Daresbury) et al.
Nb superconducting radio-frequency (SRF) cavities are observed to break down and lose their high-Q superconducting properties at accelerating gradients below the limits imposed by theory. The microscopic origins of SRF cavity breakdown are still a matter of some debate. [...]
arXiv:1904.07432.- 2019-06-13 - 9 p. - Published in : Phys. Rev. Applied 11 (2019) 064030 Fulltext: PDF;
4.
Low power superconducting microwave applications and microwave microscopy / Anlage, S M (Maryland U.) ; Vlahacos, C P (Maryland U.) ; Steinhauer, D E (Maryland U.) ; Dutta, S K (Maryland U.) ; Feenstra, B J (Maryland U.) ; Thanawalla, A (Maryland U.) ; Wellstood, F C (Maryland U.)
1998 - Published in : Part. Accel.: 61 (1998) , pp. 57-72 Fulltext: PDF;

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